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    <titleInfo>
        <title>Implications of the Newark Supergroup-based astrochronology and geomagnetic polarity time scale (Newark-APTS) for the tempo and mode of the early diversification of the Dinosauria</title>
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    <name type="personal" ID="peo1">
        <namePart type="family">Olsen</namePart>
        <namePart type="given">Paul E.</namePart>
        <role>
            <roleTerm type="text">author</roleTerm>
        </role>
        <affiliation>Columbia University. Earth and Environmental Sciences</affiliation>
    </name>
    <name type="personal" ID="dvk2">
        <namePart type="family">Kent</namePart>
        <namePart type="given">Dennis V.</namePart>
        <role>
            <roleTerm type="text">author</roleTerm>
        </role>
        <affiliation>Columbia University. Lamont-Doherty Earth Observatory</affiliation>
    </name>
    <name type="personal">
        <namePart type="family">Whiteside</namePart>
        <namePart type="given">Jessica H.</namePart>
        <role>
            <roleTerm type="text">author</roleTerm>
        </role>
    </name>
    <name type="corporate">
        <namePart>Columbia University. Lamont-Doherty Earth Observatory</namePart>
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            <roleTerm type="text">originator</roleTerm>
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    <genre>Articles</genre>
    
    <originInfo>
        <dateIssued encoding="w3cdtf" keyDate="yes">2011</dateIssued>
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        <languageTerm type="text">English</languageTerm>
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    <abstract>The Newark-APTS established a high-resolution framework for the Late Triassic and Early Jurassic. Palaeomagnetic polarity correlations to marine sections show that stage-level correlations of continental sequences were off by as much as 10 million years. New Uâ€“Pb ages show the new correlations and the Newark basin astrochronology to be accurate. Correlation of Newark-APTS to the Chinle Formation/Dockum Group, Glen Canyon Group, Fleming Fjord Formation and Ischigualasto Formation led to the following conclusions: (1) there are no unequivocal Carnian-age dinosaurs; (2) the Norian Age was characterised by a slowly increasing saurischian diversity but no unequivocal ornithischians; (3) there was profound Norian and Rhaetian continental provinciality; (4) the classic Chinle-, Germanic- and Los Colorados-type assemblages may have persisted to the close of the Rhaetian; (5) the distinct genus-level biotic transition traditionally correlated with the marine Carnianâ€“Norian is in fact mid-Norian in age and within published error of the Manicouagan impact; (6) the end-Triassic marine and continental extinctions as seen in eastern North America were contemporaneous; and (7) compared to Triassic communities, Hettangian and Sinemurian age terrestrial communities were nearly globally homogenous and of low diversity. Consequently, the complex emerging picture of dinosaur diversification demands biostratigraphically-independent geochronologies in each of the faunally-important regions.</abstract>
    <subject>
        <topic>Geology</topic>
    </subject>
    <subject>
        <topic>Paleontology</topic>
    </subject>
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        <titleInfo>
            <title>Earth and Environmental Science Transactions of the Royal Society of Edinburgh</title>
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        <part>
            <detail type="volume">
                <number>101</number>
            </detail>
            <detail type="issue">
                <number>3-4</number>
            </detail>
            <extent unit="page">
                <start>201</start>
                <end>229</end>
            </extent>
            <date>2011-05</date>
        </part>
        <identifier type="doi">http://dx.doi.org/10.1017/S1755691011020032</identifier>
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    <identifier type="hdl">http://hdl.handle.net/10022/AC:P:12397</identifier>
    
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        <recordCreationDate encoding="w3cdtf">2012-01-30 14:39:15 -0500</recordCreationDate>
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        <recordIdentifier>6394</recordIdentifier>
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